首页--工业技术论文--一般工业技术论文--工程材料学论文--功能材料论文

特殊润湿性材料在油水分离中的应用研究

摘要第5-7页
Abstract第7-8页
Chapter 1 Introduction and literature review第12-44页
    1.1 Surface wettability第12-17页
        1.1.1 Surface wetting properties第12页
        1.1.2 Theoretical basis第12-16页
        1.1.3 Underwater wettability第16-17页
    1.2. Superhydrophobic-superoleophilic materials第17-34页
        1.2.1. Metallic mesh-based materials第18-20页
        1.2.2 Fabric-based materials第20-24页
        1.2.3 Sponge and foam-based materials第24-27页
        1.2.4 Carbon-Based 3D Absorbents第27-29页
        1.2.5 Particles and powdered materials第29-32页
        1.2.6 Other bulk materials第32-34页
    1.3 Superhydrophilic-superoleophobic materials第34-39页
        1.3.1 Underwater第34-36页
        1.3.2 In air第36-39页
    1.4 Materials with self-cleaning property第39-40页
    1.5 Objectives第40-44页
Chapter 2 Ultrasonic-microwave assisted synthesis of stable reduced graphene oxidemodified melamine foam with superhydrophobicity and high oil adsorption第44-62页
    2.1 Introduction第44-46页
    2.2 Experiment Section第46-48页
        2.2.1 Materials第46页
        2.2.2 Preparation of GO solution第46页
        2.2.3 Preparation of RGMFs第46-47页
        2.2.4 Characterization第47-48页
        2.2.5 Adsorption test of UMRGMF第48页
    2.3 Results and Discussion第48-59页
        2.3.1 Characterization第48-55页
        2.3.2 Adsorption capacity of the UMRGMF第55-58页
        2.3.3 Stability of the UMRGMF第58-59页
    2.4 Conclusions第59-62页
Chapter 3 Fabrication and characterization of superhydrophilic and underwatersuperoleophobic bismuth-containing materials based coating第62-78页
    3.1 Introduction第62-64页
    3.2 Experimental section第64-67页
        3.2.1 Materials第64页
        3.2.2. Fabrication of Bi_2O_3 based coating第64-65页
        3.2.3 Preparation of Bi_2S_2SO_4 coated mesh第65-66页
        3.2.4 Preparation of BiOCl coated mesh第66页
        3.2.5 Preparation of BiVO_4 coated mesh第66页
        3.2.6 Characterization第66-67页
    3.3 Results and Discussion第67-76页
        3.3.1 Characterization第67-76页
    3.4 Conclusions第76-78页
Chapter 4 Underwater superoleophobic mesh based on BiVO_4 nanoparticles withsunlight-driven self-cleaning property for oil/water separation第78-98页
    4.1 Introduction第78-80页
    4.2 Experimental section第80-83页
        4.2.1 Materials第80页
        4.2.2 Fabrication of BiVO_4 coated mesh第80-81页
        4.2.3 Oil/water separation experiments第81页
        4.2.4 Photodegradation of aqueous organic pollutants第81-82页
        4.2.5 Self-cleaning experiment第82页
        4.2.6 Characterization第82-83页
    4.3 Results and Discussion第83-97页
        4.3.1 Characterization第83-88页
        4.3.2 Stability of the coating第88-90页
        4.3.3 Oil/water separation第90-92页
        4.3.4 Aqueous pollutant degradation第92-94页
        4.3.5 Self-cleaning property第94-97页
    4.4 Conclusions第97-98页
Chapter 5 Conclusions第98-102页
    5.1 Conclusions第98-100页
    5.2 Prospects第100-102页
References第102-114页
Publications第114-116页
Acknowledgement第116页

论文共116页,点击 下载论文
上一篇:聚合物/碳纳米管复合材料的制备及其光伏性能的研究
下一篇:威屹供应链管理公司出口业务网络营销模式研究